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    • 2. 发明公开
    • CAPACITIVE SENSOR AND COMBINED CAPACITIVE DISPLACEMENT MEASUREMENT SENSING SYSTEM
    • KAPAZITIVER传感器和KOMBINIERTES KAPAZITIVES SENSORSYSTEM ZURVERDRÄNGUNGSMESSUNG
    • EP3076136A4
    • 2017-07-26
    • EP14866749
    • 2014-11-26
    • LIN LI
    • LIN LI
    • G01D5/241
    • G01D5/2415
    • A capacitive sensor (100) and a combined capacitive displacement measurement sensing system consists of at least one STATORs (104, 105) comprising a first capacitance electrode set (11; or 13) with m electrically connected conductive electrodes (11-1, 11-2,...11-n,...11-m; or 13-1,13-2,...13-n,...13-m) and a second capacitance electrode set (12; or 14) with m electrically connected conductive electrodes (12-1, 12-2,...12-n,...12-m; or 14-1,14-2,...14-n,...14-m). One of corresponding first set and one of corresponding second set (11 and 12, or 13 and 14) of electrodes are arranged alternately at preset distances on electrically insulated substrates (17, 19). In addition, the capacitive sensor (100) consist of at least one MOVER (106) comprising one or more sets of ground electrodes (15-1, 15-2,...15-n; or 16-1,16-2,...16-n). Corresponding capacitive electrodes of the STATORs (104, 105) and the ground electrodes of the MOVER (106) form capacitors. The MOVER (106) moves relatively to the STATORs (104,105) in a controllable manner to change the overlapping areas of the capacitors, resulting changes of the capacitances, thereof, and that reflects displacement measurement. The present invention further consists of signal processing system for capturing and converting electronic signals of the variable capacitors to obtain displacement data. While proper layout of electrodes reduces the impact due to the changes in capacitor gap during moving, mutual offsets of electrodes overcomes dead zones of measurements, together with proper design of electrode shape, thus to achieve both high-precision and long-range absolute displacement measurement.
    • 电容式传感器(100)和组合电容式位移测量传感系统由至少一个包括第一电容电极组(11;或13)的STATOR(104,105)组成,所述第一电容电极组具有m个电连接的导电电极(11-1,11- 2 ... 11-n,... 11-m;或13-1,13-2,... 13-n,... 13-m)和第二电容电极组(12;或14 )具有m个电连接的导电电极(12-1,12-2,... 12-n,... 12-m;或14-1,14-2,... 14-n,... 14 -m)。 对应的第一组中的一个和对应的第二组(11和12或13和14)中的一个电极在电绝缘基板(17,19)上以预定距离交替布置。 此外,电容式传感器(100)由至少一个MOVER(106)组成,该MOVER(106)包括一组或多组接地电极(15-1,15-2,...,15-n;或16-1,16-2 ,... 16-N)。 STATOR(104,105)的对应电容电极和MOVER(106)的接地电极形成电容器。 MOVER(106)以可控制的方式相对于定子(104,105)移动,以改变电容器的重叠区域,从而导致其电容的变化,并反映位移测量。 本发明还包括信号处理系统,用于捕获和转换可变电容器的电子信号以获得位移数据。 在电极布局合理的情况下,由于电容器间隙在移动过程中发生变化,电极间的相互偏移克服了测量死区,并且电极形状设计合理,从而实现了高精度和长距离绝对位移测量 。
    • 3. 发明公开
    • CAPACITIVE SENSOR AND COMBINED CAPACITIVE DISPLACEMENT MEASUREMENT SENSING SYSTEM
    • KAPAZITIVER传感器KOMBINIERTES KAPAZITIVES SENSORSYSTEM ZURVERDRÄNGUNGSMESSUNG
    • EP3076136A1
    • 2016-10-05
    • EP14866749.6
    • 2014-11-26
    • Lin, Li
    • Lin, Li
    • G01D5/241
    • G01D5/2415
    • A capacitive sensor (100) and a combined capacitive displacement measurement sensing system consists of at least one STATORs (104, 105) comprising a first capacitance electrode set (11; or 13) with m electrically connected conductive electrodes (11-1, 11-2,...11-n,...11-m; or 13-1,13-2,...13-n,...13-m) and a second capacitance electrode set (12; or 14) with m electrically connected conductive electrodes (12-1, 12-2,...12-n,...12-m; or 14-1,14-2,...14-n,...14-m). One of corresponding first set and one of corresponding second set (11 and 12, or 13 and 14) of electrodes are arranged alternately at preset distances on electrically insulated substrates (17, 19). In addition, the capacitive sensor (100) consist of at least one MOVER (106) comprising one or more sets of ground electrodes (15-1, 15-2,...15-n; or 16-1,16-2,...16-n). Corresponding capacitive electrodes of the STATORs (104, 105) and the ground electrodes of the MOVER (106) form capacitors. The MOVER (106) moves relatively to the STATORs (104,105) in a controllable manner to change the overlapping areas of the capacitors, resulting changes of the capacitances, thereof, and that reflects displacement measurement. The present invention further consists of signal processing system for capturing and converting electronic signals of the variable capacitors to obtain displacement data. While proper layout of electrodes reduces the impact due to the changes in capacitor gap during moving, mutual offsets of electrodes overcomes dead zones of measurements, together with proper design of electrode shape, thus to achieve both high-precision and long-range absolute displacement measurement.
    • 电容传感器(100)和组合电容位移测量感测系统由至少一个包括具有m个电连接的导电电极(11-1,11-)的第一电容电极组(11或13)的定子(104,105) 2,... 11-n,... 11-m或13-1,13-2 ... 13-n,... 13-m)和第二电容电极组(12;或14 )与m个电连接的导电电极(12-1,12-2,... 12-n,... 12-m;或14-1,14-2,... 14-n,... 14 -m)。 相应的第一组和相应的第二组(11和12或13和14)中的一个电极在预定距离上交替布置在电绝缘基板(17,19)上。 另外,电容传感器(100)包括至少一个MOVER(106),MOVER(106)包括一组或多组接地电极(15-1,15-2,... 15-n或16-1,16-2 ,... 16-N)。 STATOR(104,105)的对应电容电极和MOVER(106)的接地电极形成电容器。 MOVER(106)以可控的方式相对于STATOR(104,105)移动以改变电容器的重叠区域,导致电容的变化,并且反映位移测量。 本发明还包括用于捕获和转换可变电容器的电子信号以获得位移数据的信号处理系统。 虽然电极的正确布局减少了由于电容器间隙在移动过程中的变化而产生的影响,电极的相互偏移克服了测量的死区,以及适当的电极形状设计,从而实现了高精度和远程绝对位移测量 。
    • 4. 发明公开
    • Rotatable parking space
    • Radgarage。
    • EP0405020A1
    • 1991-01-02
    • EP89306440.2
    • 1989-06-26
    • Lin, Li
    • Lin, Li
    • E04H6/16
    • E04H6/16
    • This invention relates to a rotatable parking device including an upright power-driven wheel (20) with two parallel sections (21, 21) which is rotatably supported in a vertical plane, and a plurality of casings (30) for housing motor vehicles (100) pivotally connected between the sections (21, 21). Each casing (30) has a bottom (33), two opposite open sides adapted to be an ingress and an egress for the motor vehicle (100), and blocking members (34, 70) for immobilizing the motor vehicle (100) associated with the casing (30) when the wheel (20) rotates. In this way, many motor vehicles (100) can be housed in the casings (30) which are suspended on the wheel (20) and maintain a horizontal position while the wheel (20) rotates in a vertical plane. The wheel (20) may be located either above or partially under the ground so as to conserve parking space.
    • 本发明涉及一种可旋转的停车装置,其包括具有可旋转地支撑在垂直平面中的两个平行部分(21,21)的立式动力驱动轮(20)和用于容纳机动车辆的多个壳体(100) )枢转地连接在所述部分(21,21)之间。 每个壳体(30)具有底部(33),适于作为机动车辆(100)的入口和出口的两个相对的敞开侧,以及用于固定与所述机动车辆(100)相关联的机动车辆(100)的阻挡构件(34,70) 当所述轮(20)旋转时所述壳体(30)。 以这种方式,许多机动车辆(100)可以容纳在悬挂在车轮(20)上的壳体(30)中,并且当车轮(20)在垂直平面中旋转时保持水平位置。 轮(20)可以位于地面之上或部分位于地面下,以节省停车空间。
    • 5. 发明公开
    • Fastener device for wall construction
    • BefestigungsvorrichtungfürWandkonstruktion
    • EP2385190A1
    • 2011-11-09
    • EP11154540.6
    • 2011-02-15
    • Lin, Li-Mei
    • Lin, Li-Mei
    • E04G17/065E04B2/86
    • E04G17/0658
    • A fastener device for securing two mold boards spaced from each other for forming a concrete wall member between the mold boards, the fastener device comprising a connection rod disposed between the mold boards, two connecting members attached to the connection rod and engaged through the mold boards and engaged with the mold boards for positioning the mold boards in place relative to each other, and two bracing members attached to the outer ends of the connecting members and engaged with the mold boards for further positioning the mold boards in place relative to each other, two frame members are engaged with the mold boards and secured to the mold boards with lock members.
    • 一种用于固定彼此间隔开的两个模板的紧固件装置,用于在模板之间形成混凝土壁构件,所述紧固装置包括设置在模板之间的连接杆,两个连接构件,其连接到连接杆并且通过模板 并与模具板接合,用于将模板相对于彼此定位在适当的位置,以及两个支撑构件,其连接到连接构件的外端并与模板接合,用于将模板进一步相对于彼此定位, 两个框架构件与模板卡合并且用锁定构件固定到模板上。